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PIC12LF1501 датащи(PDF) 215 Page - Microchip Technology |
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PIC12LF1501 датащи(HTML) 215 Page - Microchip Technology |
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215 / 352 page ![]() 2011-2015 Microchip Technology Inc. DS40001607D-page 215 PIC16(L)F1503 23.1 CLCx Setup Programming the CLCx module is performed by config- uring the four stages in the logic signal flow. The four stages are: • Data selection • Data gating • Logic function selection • Output polarity Each stage is setup at run time by writing to the corre- sponding CLCx Special Function Registers. This has the added advantage of permitting logic reconfiguration on-the-fly during program execution. 23.1.1 DATA SELECTION There are 16 signals available as inputs to the configu- rable logic. Four 8-input multiplexers are used to select the inputs to pass on to the next stage. The 16 inputs to the multiplexers are arranged in groups of four. Each group is available to two of the four multiplexers, in each case, paired with a different group. This arrange- ment makes possible selection of up to two from a group without precluding a selection from another group. Data selection is through four multiplexers as indicated on the left side of Figure 23-2. Data inputs in the figure are identified by a generic numbered input name. Table 23-1 correlates the generic input name to the actual signal for each CLC module. The columns labeled lcxd1 through lcxd4 indicate the MUX output for the selected data input. D1S through D4S are abbreviations for the MUX select input codes: LCxD1S<2:0> through LCxD4S<2:0>, respectively. Selecting a data input in a column excludes all other inputs in that column. Data inputs are selected with CLCxSEL0 and CLCxSEL1 registers (Register 23-3 and Register 23-5, respectively). Note: Data selections are undefined at power-up. TABLE 23-1: CLCx DATA INPUT SELECTION Data Input lcxd1 D1S lcxd2 D2S lcxd3 D3S lcxd4 D4S CLC 1 CLC 2 LCx_in[0] 000 — — 100 CLC1IN0 CLC2IN0 LCx_in[1] 001 — — 101 CLC1IN1 CLC2IN1 LCx_in[2] 010 — — 110 C1OUT_sync C1OUT_sync LCx_in[3] 011 — — 111 C2OUT_sync C2OUT_sync LCx_in[4] 100 000 — —FOSC FOSC LCx_in[5] 101 001 — — T0_overflow T0_overflow LCx_in[6] 110 010 — — T1_overflow T1_overflow LCx_in[7] 111 011 — — T2_match T2_match LCx_in[8] — 100 000 — LC1_out LC1_out LCx_in[9] — 101 001 — LC2_out LC2_out LCx_in[10] — 110 010 — Reserved Reserved LCx_in[11] — 111 011 — Reserved Reserved LCx_in[12] — — 100 000 NCO1_out LFINTOSC LCx_in[13] — — 101 001 HFINTOSC FRC LCx_in[14] — — 110 010 PWM3_out PWM1_out LCx_in[15] — — 111 011 PWM4_out PWM2_out |
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